Abstract:
A rearview assembly is disclosed for use in a vehicle for providing a rearward view from the vehicle. In one example, the rearview assembly includes at least one substrate having a partially transmissive coating and a light sensor proximate the at least one substrate. The rearview assembly further includes a secondary optic. The secondary optic has a first surface facing outward toward the at least one substrate and a second surface facing inward toward the light sensor. Vertical flutes extend uniformly along the first surface and horizontal flutes extend uniformly along the second surface. The secondary optic is configured to control a field of view of the light sensor.
Abstract:
A double ball rearview device mounting assembly includes a bracket having a windshield engagement surface, an internal sensor receiving aperture, and an external clip engagement wall. A sensor is adapted for reception in the internal sensor receiving aperture. A clip is operably coupled to the bracket to secure the sensor. A bracket cover is configured to slide into secure engagement with the bracket and includes a first mounting ball. A barrel is pivotally coupled to the first mounting ball at one end, and is pivotally coupled to a second mounting ball at the other end. A rearview device is operably mounted to the second mounting ball.
Abstract:
An apparatus, method, and process that includes a substantially transparent substrate having a first surface, a second surface, and edge extending around at least a portion of a perimeter of the substantially transparent substrate, wherein the edge being a laser induced channel edge having enhanced edge characteristics.
Abstract:
According to another aspect of the present invention, a light system for use in a rearview mirror assembly is provided and includes a light source and a first optical element. Said first optical element has a collection optic configured to direct light received from said light source, a reflector optic in optical communication with said collection optic and configured to reflect light from said collection optic, a plurality of light steering areas configured to steer light propagating in said first optical element, and a light spreading optic configured to spread light exiting said first optical element. A second optical element is in optical communication with said first optical element and is configured to diffuse light received from said first optical element to illuminate an indicia.
Abstract:
An exterior mirror assembly for a vehicle includes an arm having a proximal end coupled with a vehicle door and a distal end. A mirror assembly is coupled to the arm. The mirror assembly includes an electro-optic element. The mirror assembly is rotatable about the distal end between first and second positions. An imager is disposed proximate to the distal end and configured to capture image data within a blind spot zone of said vehicle
Abstract:
A rearview assembly includes a housing and a display assembly that is operably coupled with the housing. An actuation assembly is adjacent the housing and is configured to activate a plurality of features of the rearview assembly. The actuation assembly includes a single button that is operable between engaged and disengaged positions. A plurality of tactile indicia are spaced along the single button and are configured to indicate a particular function of the rearview assembly. A proximity sensor assembly is disposed on the single button and is configured to sense proximity of a user. A conductive contact assembly is operably coupled with the housing and configured to send a signal to a processor to activate a function of the rearview assembly.
Abstract:
A rearview mirror for a vehicle includes a substrate having a reflective surface thereon and an actuation mechanism coupled within the substrate. The actuation mechanism includes a socket plate rotatably coupled within the cavity of the housing at a first end thereof and extending to a second end and a link element rotatably coupled within the cavity of the housing adjacent the second end of the socket and engaged with the socket plate to rotate the socket plate about the first end by rotation of the link element. The actuation mechanism further includes a clutch plate rigidly coupled with the link element about an axis thereof and an input element positioned on, rotatable about, and slideable along the axis of the link element. The input element releasably engages the clutch plate under a force applied thereto along the axis.
Abstract:
An imager assembly for a vehicle is disclosed. The assembly comprises an optic lens comprising a proximal end portion, a distal end portion, and a longitudinal axis extending there between. An imager circuit is in conductive connection with an imager connector. The imager connector is configured to communicatively connect the imager circuit to the vehicle. A lens holder of a conductive material forms a shielded cavity configured to receive the proximal end portion of the optic lens and the imager circuit. The lens holder is configured to align the imager with the longitudinal axis of the optic lens.
Abstract:
A socket for a vehicle assembly is disclosed. The socket comprises a mounting structure comprising a plurality of side portions forming a first frame and a ball receiving structure formed by a second frame. The second frame is disposed within a perimeter of the first frame and comprises a plurality of support beams interconnected with the side portions of the first frame. The socket further comprises a ball mount interface comprising a contoured recess formed in each of the beams. The ball mount interface is configured to receive an exterior surface of a ball to form a ball and socket assembly.